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首页> 外文期刊>Nucleic acids research >SAMURAI (Solid-phase Assisted Mutagenesis by Uracil Restriction for Accurate Integration) for antibody affinity maturation and paratope mapping
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SAMURAI (Solid-phase Assisted Mutagenesis by Uracil Restriction for Accurate Integration) for antibody affinity maturation and paratope mapping

机译:SAMURAI(通过尿嘧啶限制进行精确整合的固相辅助诱变)用于抗体亲和力成熟和对位点定位

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Mutagenesis libraries are essential for combinatorial protein engineering. Despite improvements in gene synthesis and directed mutagenesis, current methodologies still have limitations regarding the synthesis of complete antibody single-chain variable fragment (scFv) genes and simultaneous diversification of all six CDRs. Here, we describe the generation of mutagenesis libraries for antibody affinity maturation using a cell-free solid-phase technique for annealing of single-strand mutagenic oligonucleotides. The procedure consists of PCR-based incorporation of uracil into a wild-type template, bead-based capture, elution of single-strand DNA, and in vitro uracil excision enzyme based degradation of the template DNA. Our approach enabled rapid (8 hours) mutagenesis and automated cloning of 50 position-specific alanine mutants for mapping of a scFv antibody paratope. We further exemplify our method by generating affinity maturation libraries with diversity introduced in critical, nonessential, or all CDR positions randomly. Assessment with Illumina deep sequencing showed less than 1% wild-type in two libraries and the ability to diversify all CDR positions simultaneously. Selections of the libraries with bacterial display and deep sequencing evaluation of the selection output showed that diversity introduced in non-essential positions allowed for a more effective enrichment of improved binders compared to the other two diversification strategies.
机译:诱变文库对于组合蛋白工程至关重要。尽管基因合成和定向诱变得到了改善,但是当前方法仍然在完整抗体单链可变片段(scFv)基因的合成以及所有六个CDR的同时多样化方面存在局限性。在这里,我们描述了使用无细胞固相技术对单链诱变寡核苷酸进行退火的抗体亲和力成熟诱变文库的生成。该程序包括基于PCR的尿嘧啶掺入野生型模板,基于珠子的捕获,洗脱单链DNA和基于体外尿嘧啶切除酶的模板DNA降解。我们的方法能够快速诱变(8小时)并自动克隆50个位置特异性丙氨酸突变体,以绘制scFv抗体对位。我们通过生成具有随机引入关键,非关键或所有CDR位置的多样性的亲和力成熟库来进一步举例说明我们的方法。 Illumina深度测序的评估显示两个文库中的野生型不足1%,并且能够同时使所有CDR位置多样化。具有细菌展示的文库的选择和选择输出的深度测序评估表明,与其他两种多样化策略相比,在非必需位置引入的多样性使改良的结合剂更有效地富集。

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